1)  deflagration
爆燃法
1.
and the preparingmechanism was discussed in terms of differential thermal analysis (DTA), and a physicalmodel of powder preparing by deflagration method was established, and fluorescencespectrum.
本文在低温燃烧法和爆炸法的基础上,对纳米氧化锆粉体的制备工艺进行了“微元转相”的过程设计,开发出一种低成本、快速制备高性能纳米ZrO_2粉体的新技术——爆燃法
2)  deflagration
爆燃
1.
Effect of semi-spherical shaped grate obstruction on pressure wave of flammable vapor cloud deflagration;
半球条栅型障碍物对可燃气云爆燃压力波的影响
2.
Enhancement mechanism of obstacles to gas cloud deflagration impulse;
障碍物对可燃气云爆燃冲量的加强机制
3)  detonation
爆燃
1.
Study of deflagration-to-detonation transition of combustible gas;
可燃气体爆燃转爆轰问题的研究
2.
The author introduces the principle of engine detonation,describes the structural principle of BX-1 knock limitator and its function,regulation and points for attention in use.
爆燃使发动机过热,功率降低,油耗增加,缩短发动机的使用寿命。
3.
Producing mechanism of gasoline engine detonation and crude operation of diesel engine which were two kinds of abnormal combustion phenomenon were analyzed in this paper.
分析了汽油机爆燃和柴油机工作粗暴两种非正常燃烧现象产生的机理 ,指出了两种现象的异同 ,提出了相应的防治措施。
4)  Knock
爆燃
1.
Experiment on the Knock Control of HCCI Engine by CO_2 at High Loads;
CO_2改善均质压燃发动机高负荷爆燃的试验
2.
Measures prevent knock of gasoline engines;
浅议防止汽油机爆燃的有效措施
3.
A Study on knocking Cycles Rate for Gasline Engines Knocking Evaluation;
爆燃循环率用于汽油机爆燃强度评估的研究
5)  explosive combustion
爆燃
1.
This paper has introduced an explosive combustion accident at the cold start-up stage in a 300 MW CFB boiler.
通过对国产300 MW循环流化床锅炉在冷态启动阶段发生爆燃的实际工况中各个参数的变化趋势进行分析,发现循环流化床锅炉在冷态启动阶段由于炉内的内外循环物料少,炉内燃烧工况的不稳定性、炉膛内各处的温度偏差较大是产生炉膛爆燃的原因。
2.
The rate of explosive combustion of RDX-CMDB(Comprosite Modified Double-Base) propellant when catalyzed by ferrocene derivative has been studied.
研究了一些二茂铁衍生物对RDX-双基推进剂的爆燃延迟期的影响,发现几种二茂铁衍生物对RDX-双基体系推进剂有显著的催化燃烧和降低压力指数作用。
6)  exploding fracture
爆燃裂缝
1.
The effects of hydraulic fracture parameters and exploding fracture parameters on well productivity were analyzed.
基于水力裂缝层内爆燃压裂技术提高低渗透油田采收率和油井产量的基本设想,利用油藏渗流理论和节点系统分析方法,建立了水力裂缝层内爆燃压裂油井产能计算模型,并分析了水力裂缝和爆燃裂缝参数对油井产能的影响。
参考词条
补充资料:爆燃
分子式:
CAS号:

性质:指火炸药的快速燃烧。只在药柱的反应区内进行,通过热传导、扩散和辐射传播,速度可达数百米每秒,但低于火炸药中的音速。伴随有火焰及火花,燃烧粒子四面飞散。例如,爆破弹的不完全爆炸即属于爆燃。外界条件对燃速影响很大,特别是随外界压力的增大而急剧增高。如在火炮药室内,燃烧过程大为加快,并产生明显的音响效应和做机械功。在一定条件下,爆燃可转化为爆轰。

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